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Experimental study of influence of nanoparticles adhesion and sedimentation layer on solid-liquid interfacial thermal resistance

机译:纳米粒子粘附层沉降层对固液界面热阻影响的实验研究

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摘要

Solid-liquid (S-L) interfacial thermal resistance (ITR) is one of the key phenomena in the microscopic system where the interface plays a role in thermal transport, such as nanofluids. The changes in the S-L ITR in the case of the nanoparticle adhesion and sedimentation had not been experimentally characterized until now. In the present study, we experimentally investigated the changes in the S-L ITR when the ZrO_2 nanoparticle adhesion and sedimentation layer were formed on the stainless steel surface. We found that some portion of the nanoparticles inevitably adhered to the stainless steel surface. In the present study, the amount of the nanoparticle adhesion was not enough to change the macroscopic wettability and the S-L ITR. However, in the case of the nanoparticle sedimentation layer, the apparent S-L decreased, as the nanoparticle sedimentation became thicker. The tendency was consistent with the present thermal resistant model of the nanoparticle sedimentation layer. The nanoparticle sedimentation layer did not substantially influence the true S-L ITR. The above-mentioned findings are the basic knowledge that is beneficial and helpful for better understanding and designing the thermal conductivity measurements of the nanofluids, as well as the nanofluids heat transfer in flow channels.
机译:固液(S-L)界面热阻(ITR)是显微镜系统中的关键现象之一,其中界面在热传输中发挥作用,例如纳米流体。在纳米颗粒粘附和沉淀的情况下,S-L ITR的变化均未在实验表征到现在。在本研究中,我们在在不锈钢表面上形成ZrO_2纳米颗粒粘附和沉降层时,实验研究了S-L ITR的变化。我们发现纳米颗粒的一些部分不可避免地粘附到不锈钢表面上。在本研究中,纳米粒子粘附的量不足以改变宏观润湿性和S-L ITR。然而,在纳米粒子沉降层的情况下,随着纳米颗粒沉降变厚,表观S-L降低。趋势与纳米粒子沉降层的本热抗性模型一致。纳米粒子沉降层没有基本上影响真正的S-L ITR。上述结果是基本知识,有利于和有助于更好地理解和设计纳米流体的导热率测量,以及流动通道中的纳米流体传热。

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